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A curing agent for epoxy resin based on microencapsulation of 1-butylimidazole

机译:一种基于1-丁基咪唑微胶囊化的环氧树脂固化剂

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摘要

Abstract An efficient and economical strategy for rapid microencapsulation of 1-butylimidazole (1-BMI) was developed. The strategy is based on the thiol-yne click reaction of trimethylolpropane tris(3-mercaptopropionate) and 1,7-octadiyne in oil-in-water emulsion. The thiol-yne click reaction is not only green and efficient, but also improves the cross-linking density of shell. Thus, the obtained shell prevents the leakage of curing agent and prolongs the storage period of EP/MCs system. The whole process of preparing 1BMI-MCs only took 40 min. Moreover, the effects of stirring speed and the ratio of 1BMI on the size and core content of microcapsules (MCs) were investigated. Results demonstrated that the optimal particle size was about 10.8 μm, and the maximum content of 1BMI in MCs was 33 corresponding to 60 1BMI in oil phase. Afterward, the 1BMI MCs were used as latent curing agent (LCA) for epoxy resin (EP). In the curing reaction of the epoxy resin, the 1BMI-MCs exhibited a delayed kinetic behavior compared to pure 1BMI. Furthermore, the E-51/MCs system had a storage term of 16 weeks. The shell material not only had no effect on curing effect of E-51, but also toughen the cured EP systems. This paper provided a promising method for long-term storage of LCA.
机译:摘要 建立了一种高效、经济的1-丁基咪唑(1-BMI)快速微胶囊化策略。该策略基于三羟甲基丙烷、三(3-巯基丙酸酯)和1,7-辛二炔在水包油乳液中的巯基-炔咔哒反应。巯基-炔咔哒反应不仅绿色高效,而且提高了壳的交联密度。因此,所得到的外壳防止了固化剂的泄漏,延长了EP/MCs体系的储存期。制备1BMI-MCs的整个过程仅用了40分钟。此外,还研究了搅拌速度和1BMI比值对微胶囊(MCs)粒径和芯含量的影响。结果表明,最佳粒径约为10.8 μm,MCs中1BMI的最大含量为33%,油相中1BMI含量为60%。之后,将1BMI MCs用作环氧树脂(EP)的潜伏固化剂(LCA)。在环氧树脂的固化反应中,与纯1BMI相比,1BMI-MCs表现出延迟动力学行为。此外,E-51/MCs系统的储存期限为16周。壳体材料不仅对E-51的固化效果没有影响,而且使固化后的EP体系增韧。本文为LCA的长期储存提供了一种很有前途的方法。

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